在热轧带钢进行超快速冷却过程中由于上下喷嘴距钢板表面的不同高度及重力的影响,带钢上下表面流场分布规律有所不同,进而影响带钢上下表面冷却的均匀性.采用理论分析与数值计算相结合的方法,并通过Fluent软件得到了不同冷却工艺制度下带钢上下表面换热系数的分布和变化规律;通过对实验数据的分析,采用最小二乘法得到了不同射流速度下最优水比的计算公式.结果表明,水量比变化对带钢上下表面换热系数会产生明显的影响,且随射流速度增大,带钢上下表面换热均匀时的水比也随之变大;当上下水量相同时,在射流速度为5~12.5 m/s范围时,随射流速度增大,带钢上下表面的平均换热系数的差值不断减小,当射流速度大于12.5 m/s时其差值基本保持不变.
参考文献
[1] | 王国栋.以超快速冷却为核心的新一代TMCP技术[J].上海金属,2008(02):1-5. |
[2] | 王国栋.新一代控制轧制和控制冷却技术与创新的热轧过程[J].东北大学学报(自然科学版),2009(07):913-922. |
[3] | Kim-Bao Nguyen;Seok-Hun Yoon;Jae Hyuk Choi .Effect of working-fluid filling ratio and cooling-water flow rate on the performance of solar collector with closed-loop oscillating heat pipe[J].Journal of Mechanical Science and Technology,2012(1):251-258. |
[4] | Yuling Shi;M. B. Ray;A. S. Mujumdar .Computational Study of Impingement Heat Transfer under a Turbulent Slot Jet[J].Industrial & Engineering Chemistry Research,2002(18):4643-4651. |
[5] | Dipankar Sahoo;M. A. R. Sharif .Numerical modeling of slot-jet impingement cooling of a constant heat flux surface confined by a parallel wall[J].International Journal of Thermal Sciences,2004(9):877-887. |
[6] | Abdel-Fattah A .Numerical and experimental study of turbulent impinging twin-jet flow[J].Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics,2007(8):1061-1072. |
[7] | Miroslaw Zukowski .Heat transfer performance of a confined single slot jet of air impinging on a flat surface[J].International Journal of Heat and Mass Transfer,2013(2):484-490. |
[8] | Pritish R. Parida;Srinath V. Ekkad;Khai Ngo .Experimental and numerical investigation of confined oblique impingement configurations for high heat flux applications[J].International Journal of Thermal Sciences,2011(6):1037-1050. |
[9] | Dahbia Benmouhoub;Amina Mataoui .Turbulent Heat Transfer From a Slot Jet Impinging on a Flat Plate[J].Journal of heat transfer: Transactions of the ASME,2013(10):102201-1-102201-9. |
[10] | Farhana Afroz;M. A. R. Sharif.Numerical study of heat transfer from an isothermally heated flat surface due to turbulent twin oblique confined slot-jet impingement[J].International Journal of Thermal Sciences,2013:1-13. |
[11] | Puneet Gulati;Vadiraj Katti;S. V. Prabhu .Influence of the shape of the nozzle on local heat transfer distribution between smooth flat surface and impinging air jet[J].International Journal of Thermal Sciences,2009(3):602-617. |
[12] | Tzer-Ming Jeng;Sheng-Chung Tzeng;Rui Xu.Heat transfer characteristics of a rotating cylinder with a lateral air impinging jet[J].International Journal of Heat and Mass Transfer,2014:235-249. |
[13] | M. Gradeck;A. Kouachi;J. L. Borean;P. Gardin;M. Lebouche .Heat transfer from a hot moving cylinder impinged by a planar subcooled water jet[J].International Journal of Heat and Mass Transfer,2011(25/26):5527-5539. |
[14] | Ching-Yu Hsu;Cho-Chung Liang;Tso-Liang Teng;Anh-Tu Nguyen .A numerical study on high-speed water jet impact[J].Ocean engineering,2013(Nov.1):98-106. |
[15] | Martin J. Schuler;Tobias Rothenfluh;Philipp Rudolf von Rohr.Numerical analysis of penetration lengths in submerged supercritical water jets[J].The Journal of Supercritical Fluids,2013:213-220. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%